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High efficiency AC/DC power supply for onboard aircraft gallery equipment

机译:用于板载飞机库设备的高效AC / DC电源

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In most of the future developments it is envisioned that individual system component be self aware and intelligent. It is required that it should be able to communicate with central system on bus and can also be controlled from remote. Most modern AC/DC converters are not only operated at higher frequencies to reduce size but integrate soft switching techniques to increase efficiency. Due to IEC and CISPR regulations these converters are often multistage and integrate PFC (Power Factor Correction) at mains end. Hence all digital system is a challenge on the one hand but offers benefits in the form of easy control bus integration. All the PFC stage control algorithms (Average current mode control, sliding mode control etc.) require extensive processing power and integration of resonant converter at DC/DC stage further complicates the problem due to the fact that average models fails to predict the load dynamics and accommodation of higher order harmonics in design is vital for closed-loop stability.
机译:在大多数未来的发展中,设想各个系统组件是自我意识和智能的。要求它应该能够在总线上与中央系统通信,也可以从远程控制。大多数现代AC / DC转换器不仅在较高频率下运行,以减小尺寸,而且集成了软切换技术以提高效率。由于IEC和CISPR法规,这些转换器通常是多级的,并在电源端集成PFC(功率因数校正)。因此,所有数字系统都是一方面的挑战,但以易于控制的总线集成的形式提供了益处。所有PFC级控制算法(平均电流模式控制,滑动模式控制等)需要广泛的处理电源,并且在DC / DC阶段的谐振转换器的集成进一步复杂了问题,因为平均模型无法预测负载动态和高阶谐波设计的住宿对于闭环稳定性至关重要。

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